Problems of analysis, optimization and control in the separation of gas mixtures

Mathematical models of dynamics of pressure swing adsorption processes for the separation of synthesis gas (into hydrogen, carbon dioxide and carbon monoxide) and air (into oxygen, nitrogen and argon) have been developed. The models allow calculating the profiles of component concentrations and temp...

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Main Authors: E. I. Akulinin, O. O. Golubyatnikov, D. S. Dvoretskii, S. I. Dvoretskii
Format: Article
Language:Russian
Published: Voronezh state university of engineering technologies 2018-10-01
Series:Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij
Subjects:
Online Access:https://www.vestnik-vsuet.ru/vguit/article/view/1810
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spelling doaj-b0d5f61924f049c79f1b97af725fcc072021-07-29T08:05:11ZrusVoronezh state university of engineering technologies Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij2226-910X2310-12022018-10-018029310010.20914/2310-1202-2018-2-93-1001431Problems of analysis, optimization and control in the separation of gas mixturesE. I. Akulinin0O. O. Golubyatnikov1D. S. Dvoretskii2S. I. Dvoretskii3Tambov State Technical UniversityTambov State Technical UniversityTambov State Technical UniversityTambov State Technical UniversityMathematical models of dynamics of pressure swing adsorption processes for the separation of synthesis gas (into hydrogen, carbon dioxide and carbon monoxide) and air (into oxygen, nitrogen and argon) have been developed. The models allow calculating the profiles of component concentrations and temperature of gas and solid phases, pressure and velocity of gas mixture along the height of adsorbent in relation to time. The models include the following equations: 1) processes of mass and heat transfer during the adsorption (desorption) of a sorptive (H2, CO2, COandO2, N2, Ar) by granulated zeolite adsorbents 5Aand13Х; 2) kinetics of compound diffusion transport of adsorbate and Langmuir-Freundlich isotherm (for the synthesis gas separation), kinetics of external diffusion and Dubinin-Radushkevich isotherm (for the air separation); 3) the Ergun equation for the calculation of pressure and velocity of gas mixture in adsorbent.The system of partial differential equations was solved by method of lines. The system of ordinary differential equations was solved by the fourth-order Runge-Kutta method with automatic step selection.To analyze the accuracy of mathematical models of the adsorption separation of synthesis-gas for recovery hydrogen, the relative error of the mismatch between the calculated values for the model and the experimental values of the concentration of the product (hydrogen, oxygen) in the 'steady state' (after 15-30 operating cycles of the PSA) was calculated. The maximum value of the relative error did not exceed 11.5%.Numerical studies were carried out in a wide range of changes in the time of the cycle "adsorption-desorption" and the pressure at the stage of adsorption to determine the effect of changes in temperature, composition and pressure of the initial gas mixture on the purity, recovery and temperature of production hydrogen and oxygen, as well as the relationship of the PSA unit capacity with the purity of the resulting product (hydrogen, oxygen). The problem of adaptive optimization of the process of adsorption separation of a gas mixture and obtaining hydrogen and oxygen with a maximum concentration was formulated and solved.The algorithmic and software of the automated adaptive control system was developed.https://www.vestnik-vsuet.ru/vguit/article/view/1810pressure swing adsorption, zeolite adsorbent, synthesis gasair, mathematical model, numerical analysis, optimization, controlling
collection DOAJ
language Russian
format Article
sources DOAJ
author E. I. Akulinin
O. O. Golubyatnikov
D. S. Dvoretskii
S. I. Dvoretskii
spellingShingle E. I. Akulinin
O. O. Golubyatnikov
D. S. Dvoretskii
S. I. Dvoretskii
Problems of analysis, optimization and control in the separation of gas mixtures
Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij
pressure swing adsorption, zeolite adsorbent, synthesis gas
air, mathematical model, numerical analysis, optimization, controlling
author_facet E. I. Akulinin
O. O. Golubyatnikov
D. S. Dvoretskii
S. I. Dvoretskii
author_sort E. I. Akulinin
title Problems of analysis, optimization and control in the separation of gas mixtures
title_short Problems of analysis, optimization and control in the separation of gas mixtures
title_full Problems of analysis, optimization and control in the separation of gas mixtures
title_fullStr Problems of analysis, optimization and control in the separation of gas mixtures
title_full_unstemmed Problems of analysis, optimization and control in the separation of gas mixtures
title_sort problems of analysis, optimization and control in the separation of gas mixtures
publisher Voronezh state university of engineering technologies
series Vestnik Voronežskogo Gosudarstvennogo Universiteta Inženernyh Tehnologij
issn 2226-910X
2310-1202
publishDate 2018-10-01
description Mathematical models of dynamics of pressure swing adsorption processes for the separation of synthesis gas (into hydrogen, carbon dioxide and carbon monoxide) and air (into oxygen, nitrogen and argon) have been developed. The models allow calculating the profiles of component concentrations and temperature of gas and solid phases, pressure and velocity of gas mixture along the height of adsorbent in relation to time. The models include the following equations: 1) processes of mass and heat transfer during the adsorption (desorption) of a sorptive (H2, CO2, COandO2, N2, Ar) by granulated zeolite adsorbents 5Aand13Х; 2) kinetics of compound diffusion transport of adsorbate and Langmuir-Freundlich isotherm (for the synthesis gas separation), kinetics of external diffusion and Dubinin-Radushkevich isotherm (for the air separation); 3) the Ergun equation for the calculation of pressure and velocity of gas mixture in adsorbent.The system of partial differential equations was solved by method of lines. The system of ordinary differential equations was solved by the fourth-order Runge-Kutta method with automatic step selection.To analyze the accuracy of mathematical models of the adsorption separation of synthesis-gas for recovery hydrogen, the relative error of the mismatch between the calculated values for the model and the experimental values of the concentration of the product (hydrogen, oxygen) in the 'steady state' (after 15-30 operating cycles of the PSA) was calculated. The maximum value of the relative error did not exceed 11.5%.Numerical studies were carried out in a wide range of changes in the time of the cycle "adsorption-desorption" and the pressure at the stage of adsorption to determine the effect of changes in temperature, composition and pressure of the initial gas mixture on the purity, recovery and temperature of production hydrogen and oxygen, as well as the relationship of the PSA unit capacity with the purity of the resulting product (hydrogen, oxygen). The problem of adaptive optimization of the process of adsorption separation of a gas mixture and obtaining hydrogen and oxygen with a maximum concentration was formulated and solved.The algorithmic and software of the automated adaptive control system was developed.
topic pressure swing adsorption, zeolite adsorbent, synthesis gas
air, mathematical model, numerical analysis, optimization, controlling
url https://www.vestnik-vsuet.ru/vguit/article/view/1810
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AT oogolubyatnikov problemsofanalysisoptimizationandcontrolintheseparationofgasmixtures
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AT sidvoretskii problemsofanalysisoptimizationandcontrolintheseparationofgasmixtures
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